Article ID Journal Published Year Pages File Type
159988 Chemical Engineering Science 2006 13 Pages PDF
Abstract

The method of volume averaging is used to derive the diffusive mass transfer boundary conditions for transport between the micro-pores (ωω-region) and the fluid in the macro-pores (ηη-region) in a catalyst pellet. In this configuration, the mass jump boundary condition between the homogeneous regions takes the form-nηω·(Dγ∇〈cAγ〉ηγ)+nηω·(εγDω·∇〈cAγ〉ωγ)=Keff〈cAγ〉ωγ,where KeffKeff is the effective reaction rate coefficient at the inter-region. In this study, a closure is derived in order to predict this average jump coefficient as a function of the microstructure of the porous layer and the Thiele modulus. The jump coefficient predicted for three inter-region structures is presented.

Related Topics
Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
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